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Photodegradation of Metolachlor Applying UV and UV/H_O_2

机译:UV和UV / H_O_2对甲草胺的光降解

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Metolachlor is one of the most widely used herbicides in the world for controlling weeds. It has been detected in both ground and surface waters in the United States, and there are rising concerns in regard to its health risks and in developing effective treatment processes for its removal from water. Degradation of metolachlor via ultraviolet (UV) photolysis and an UV/hydrogen peroxide advanced oxidation process (AOP) was studied. The quantum yield of metolachlor at 254 nm was found to be 0.302 ± 0.001 mol E~(-1) through direct UV photolysis in the range of pH 6-8. The second-order rate constant of the reaction between metolachlor and hydroxyl radical was determined to be 9.07 (±0.21) x 10~9 M~(-1) s~(-1) by using a competition kinetics model that utilized nitrobenzene as a reference compound. In addition, these parameters were successfully applied in modeling the kinetics of elimination of metolachlor using an UV/H_2O_2 process in both laboratory and natural waters. The formation of several photolysis byproducts was identified using gas chromatography/mass spectrometry, and a scheme for the metolachlor photodegradation pathway is proposed.
机译:甲草胺是控制杂草的世界上使用最广泛的除草剂之一。在美国的地下水和地表水中都检测到了它,因此人们对其健康风险和开发有效的处理方法以从水中去除的问题日益关注。研究了通过紫外线(UV)光解和紫外线/过氧化氢高级氧化工艺(AOP)降解甲草胺的方法。通过在6-8的pH范围内进行直接UV光解,发现甲草胺在254 nm处的量子产率为0.302±0.001 mol E〜(-1)。通过以硝基苯为溶剂的竞争动力学模型,异丙甲草胺与羟基自由基反应的二阶速率常数确定为9.07(±0.21)x 10〜9 M〜(-1)s〜(-1)。参考化合物。此外,这些参数已成功应用于在实验室和天然水中使用UV / H_2O_2工艺对甲草胺消除动力学建模。利用气相色谱/质谱法鉴定了几种光解副产物的形成,并提出了甲草胺光降解途径的方案。

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